A filling water ozone mixing device

Through the motor-driven reciprocating screw mechanism and bubble formation technology, the problem of insufficient mixing of ozone and water is solved, and efficient sterilization and disinfection effects are achieved, meeting the production requirements of bottled alkaline spring water.

CN116675303BActive Publication Date: 2025-09-26ANHUI WANSHUI BEVERAGE CO LTD
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Patent Information

Application Number
CN202310784516.9
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-29
Publication Date
2025-09-26
Estimated Expiration
2043-06-29

AI Technical Summary

Technical Problem

In the prior art, the degree of dispersion of ozone in water is high, resulting in poor mixing effect of ozone and water, which makes it difficult to meet the production requirements of bottled alkaline spring water.

Method used

A motor-driven reciprocating screw mechanism is used to make the first and second annular hollow plates move up and down. The ozone concentration sensor and controller are combined to control the valve. The air pump discharges gas to form bubbles to increase water flow and improve the mixing degree of ozone and water.

Benefits of technology

It significantly improves the mixing degree of ozone and water, enhances the sterilization and disinfection effect, and ensures that the water quality meets the standards.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a canned water ozone mixing device, the mixing device comprising a tank body, an ozone generator and a motor are installed at the upper end of the tank body, the motor is located to the right of the ozone generator, the output shaft end of the motor extends into the tank body, a water outlet is provided at the lower end of the tank body, a display screen and a controller are installed on the front side of the tank body, the controller is located below the display screen, and a mixing mechanism and an output mechanism are provided in the tank body. The present invention starts the motor, and the starting of the motor causes the first reciprocating screw to rotate, and through the transmission of the transmission belt, the second reciprocating screw rotates synchronously with the first reciprocating screw, and finally causes the first annular hollow plate and the second annular hollow plate to reciprocate up and down, mixing ozone with water, which is beneficial to improving the mixing degree of ozone and water and improving the sterilization and disinfection effect.
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Description

Technical Field

[0001] The invention belongs to the technical field of ozone mixing, and in particular relates to a filling water ozone mixing device. Background Art

[0002] According to a bottled water ozone mixing device mentioned in patent number CN202023342350.6, hot alkaline spring water in the natural world usually contains a certain amount of microorganisms and cannot be drunk directly. It needs to be killed by ozone addition. Traditional ozone addition usually adopts the mixing tower ozone addition method, which is difficult to dissolve effective ozone; in addition, long-term or large-scale ozone addition will produce bromate, resulting in excessive bromate in the treated alkaline spring water. The hot alkaline spring water produced is difficult to meet the production requirements of bottled alkaline spring water and the current relevant standards;

[0003] The solution is to install a second ozone concentration sensor in the storage tank to detect the ozone concentration in the tank. When the detected concentration value is close to or higher than the preset value in the controller, the controller controls the control valve on the connecting pipe to close, which can effectively prevent the ozone concentration in the water from being too high and causing the bromate to exceed the standard. The water outlet along the tangential direction of the tank body of the water inlet pipe is connected to the water inlet of the storage tank along the tangential direction of the tank body. The water after adding ozone is injected into the tangential direction of the tank body along the tangential direction of the tank body, so that the water injected into the tangential direction of the tank body forms a vortex inside the tangential direction of the tank body, thereby achieving the purpose of mixing.

[0004] However, since the higher the degree of dispersion of ozone in water, the more complete the mixing of ozone and water, and the mixing effect of this device is average, it is not conducive to improving the mixing degree of ozone and water. Summary of the Invention

[0005] The present invention addresses the problem in the prior art that the higher the degree of ozone dispersion in water, the more fully ozone and water are mixed, while the mixing effect of the device is average, which is not conducive to improving the degree of mixing of ozone and water. The present invention proposes the following technical solutions:

[0006] A filling water ozone mixing device includes a tank body, an ozone generator and a motor are installed on the upper end of the tank body, the ozone generator can be a Beijing Huandu Yatai HD-SOZ-YWS series high-concentration ozone water machine, the motor is located on the right side of the ozone generator, the end of the motor's output shaft extends into the tank body, a water outlet is provided at the lower end of the tank body, a display screen and a controller are installed on the front side of the tank body, the controller is located below the display screen, and a mixing mechanism and an output mechanism are provided in the tank body.

[0007] During use, starting the motor will cause the first reciprocating screw to rotate, and through the transmission of the transmission belt, the second reciprocating screw will rotate synchronously with the first reciprocating screw, and finally the first annular hollow plate and the second annular hollow plate will move back and forth up and down, mixing the ozone and water, which is beneficial to improve the mixing degree of ozone and water and improve the sterilization and disinfection effect.

[0008] The mixing mechanism includes a first reciprocating screw and a second reciprocating screw which are rotatably connected between the upper and lower inner walls of the tank body. The first reciprocating screw is provided with a threaded layer and is threadedly connected to a first annular hollow plate. The second reciprocating screw is provided with a threaded layer and is threadedly connected to a second annular hollow plate. A transmission chamber is opened at the bottom of the tank body.

[0009] As a preferred embodiment of the above technical solution, the lower ends of the first reciprocating screw and the second reciprocating screw both extend into the transmission cavity, and are both equipped with transmission wheels. The two transmission wheels are connected by a transmission belt, and the end of the output shaft of the motor is fixedly connected to the upper end of the first reciprocating screw.

[0010] Two guide rods are fixedly connected between the upper and lower inner walls of the tank body. The guide rod on the left side passes through the first annular hollow plate and is slidably connected to the first annular hollow plate. The guide rod on the right side passes through the second annular hollow plate and is slidably connected to the second annular hollow plate. Multiple air outlets are provided on the inner sides of the first annular hollow plate and the second annular hollow plate. An ozone concentration sensor is installed on the upper end of the second annular hollow plate, and the ozone concentration sensor is connected to the controller signal.

[0011] The output mechanism includes a water pump installed on the left outer wall of the tank body. The water outlet end of the water pump extends to the upper end of the tank body and is connected to the main pipeline. The lower end of the main pipeline is connected to the water outlet pipe and the connecting pipe. The connecting pipe is located on the right side of the water outlet pipe.

[0012] The lower end of the water outlet pipe extends into the tank body and communicates with the interior of the second annular hollow plate through a first hose. The lower end of the connecting pipe extends into the tank body and communicates with the interior of the first annular hollow plate through a second hose.

[0013] A first ozone water mixing device is provided on the rear side of the main pipeline, and the main pipeline is connected to the first ozone water mixing device through a first branch pipe and a first mixing pipe. A second ozone water mixing device is provided on the right side of the connecting pipe, and the connecting pipe is connected to the second ozone water mixing device through a second branch pipe and a second mixing pipe. Both the first ozone water mixing device and the second ozone water mixing device are connected to the ozone generator through an air supply pipe.

[0014] After the water pump is started, it will pump water from the outside into the main pipe. The water outlet of the first branch pipe is mixed with ozone in the first ozone water mixing device and then flows into the main pipe through the first mixing pipe. The mixed ozone water flows through the main pipe to the second annular hollow plate and flows into the tank through multiple air outlets. At this time, the ozone concentration sensor detects the ozone concentration in the tank and transmits the detection signal to the controller. The controller compares the received ozone concentration value with the preset ozone concentration value. When the detected concentration value is lower than the preset value, the controller controls the control valves on the main pipe and the second mixing pipe to open. After the ozone and water are mixed in the second ozone water mixing device, they flow into the connecting pipe through the second mixing pipe and into the first annular hollow plate through the second hose, and finally flow into the interior of the tank from multiple air outlets, so that the water in the tank reaches the predetermined concentration and is sterilized.

[0015] An air pump is provided on the front side of the connecting pipe, the air outlet pipe of the air pump is connected to the air outlet pipe, the air outlet pipe is connected to the connecting pipe, and control valves are installed on the air outlet pipe, the second mixing pipe and the main pipe, and each control valve is connected to the controller signal.

[0016] The controller controls the control valves on the main pipeline and the second mixing pipe to close, opens the control valve on the water outlet pipe, and starts the air pump. The start of the air pump will discharge gas through multiple outlets on the first annular hollow plate. These gases are blown into the mixed water in the form of bubbles. The injection of bubbles will also increase the flow of the water body, further improving the mixing degree of ozone and water.

[0017] Compared with the prior art, the present invention has the following beneficial effects:

[0018] (1) When the motor is started, the first reciprocating screw is rotated, and the second reciprocating screw is rotated synchronously with the first reciprocating screw through the transmission belt, and finally the first annular hollow plate and the second annular hollow plate are moved up and down to mix the ozone and water, which is beneficial to improve the mixing degree of ozone and water and improve the sterilization and disinfection effect;

[0019] (2) It is worth mentioning here that when the controller compares the received ozone concentration value with the preset ozone concentration value, when the detected concentration value is higher than the preset value, the controller controls the control valves on the main pipe and the second mixing pipe to close, opens the control valve on the outlet pipe, and starts the air pump. The start of the air pump will discharge gas through the multiple outlets on the first annular hollow plate. These gases are blown into the mixed water in the form of bubbles. The injection of bubbles will also increase the flow of the water body, further improving the mixing degree of ozone and water. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 shows a schematic diagram of the overall structure of an embodiment of the present invention;

[0021] Figure 2 The embodiment of the present invention is shown Figure 1 A magnified view of point A;

[0022] Figure 3 A schematic diagram of the internal structure of an embodiment of the present invention is shown;

[0023] Figure 4 shows a plan view of the internal structure of an embodiment of the present invention;

[0024] In the figure: 1. tank body; 2. bottom column; 3. water pump; 4. display screen; 5. controller; 6. first hose; 7. second hose; 8. first annular hollow plate; 9. second annular hollow plate; 10. ozone concentration sensor; 11. motor; 12. first reciprocating screw; 13. second reciprocating screw; 14. transmission belt; 15. guide rod; 16. air outlet; 17. ozone generator; 18. air pump; 19. first ozone-water mixing device; 20. second ozone-water mixing device; 21. air supply pipe; 22. first branch pipe; 23. first mixing pipe; 24. water outlet pipe; 25. connecting pipe; 26. control valve; 27. second mixing pipe; 28. second branch pipe; 29. ​​main pipeline. Implementation Method

[0025] In order to make the purpose, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the present invention will be clearly and completely described below in conjunction with the embodiments.

[0026] The present invention provides a filling water ozone mixing device, such as Figure 1-4 The tank body 1 includes a tank body 1, an ozone generator 17 and a motor 11 are installed on the upper end of the tank body 1. The ozone generator 17 can be a Beijing Huandu Yatai HD-SOZ-YWS series high-concentration ozone water machine. The motor 11 is located on the right side of the ozone generator 17. The lower end of the tank body 1 is provided with a water outlet. The output shaft end of the motor 11 extends into the tank body 1. A display screen 4 and a controller 5 are installed on the front side of the tank body 1. The controller 5 is located below the display screen 4. A mixing mechanism and an output mechanism are provided in the tank body 1.

[0027] like Figure 3-4 As shown, the mixing mechanism includes a first reciprocating screw 12 and a second reciprocating screw 13 rotatably connected between the upper and lower inner walls of the tank body 1, the first reciprocating screw 12 is provided with a threaded layer, and is threadedly connected to the first annular hollow plate 8, the second reciprocating screw 13 is provided with a threaded layer, and is threadedly connected to the second annular hollow plate 9, a transmission cavity is provided at the bottom of the tank body 1, the lower ends of the first reciprocating screw 12 and the second reciprocating screw 13 extend into the transmission cavity, and are both equipped with transmission wheels, the two transmission wheels are connected by a transmission belt 14, and the end of the output shaft of the motor 11 is fixedly connected to the upper end of the first reciprocating screw 12.

[0028] like Figure 3-4 As shown, two guide rods 15 are fixedly connected between the upper and lower inner walls of the tank body 1. The guide rod 15 on the left side passes through the first annular hollow plate 8 and is slidably connected to the first annular hollow plate 8. The guide rod 15 on the right side passes through the second annular hollow plate 9 and is slidably connected to the second annular hollow plate 9. A plurality of air outlets 16 are provided on the inner sides of the first annular hollow plate 8 and the second annular hollow plate 9. An ozone concentration sensor 10 is installed on the upper end of the second annular hollow plate 9, and the ozone concentration sensor 10 is connected to the controller 5 signal.

[0029] like Figure 1-4 As shown, the output mechanism includes a water pump 3 installed on the left outer wall of the tank body 1, the water outlet end of the water pump 3 extends to the upper end of the tank body 1 and is connected to the main pipe 29, the lower end of the main pipe 29 is connected to the water outlet pipe 24 and the connecting pipe 25, the connecting pipe 25 is located on the right side of the water outlet pipe 24, the lower end of the water outlet pipe 24 extends into the tank body 1, and is connected to the interior of the second annular hollow plate 9 through the first hose 6, the lower end of the connecting pipe 25 extends into the tank body 1, and is connected to the interior of the first annular hollow plate 8 through the second hose 7.

[0030] like Figure 1-4 As shown, a first ozone water mixing device 19 is provided on the rear side of the main pipeline 29, and the main pipeline 29 is connected to the first ozone water mixing device 19 through a first branch pipe 22 and a first mixing pipe 23. A second ozone water mixing device 20 is provided on the right side of the connecting pipe 25, and the connecting pipe 25 is connected to the second ozone water mixing device 20 through a second branch pipe 28 and a second mixing pipe 27. The first ozone water mixing device 19 and the second ozone water mixing device 20 are both connected to the ozone generator 17 through an air supply pipe 21. An air pump 18 is provided on the front side of the connecting pipe 25, and an air outlet pipe of the air pump 18 is connected to an air outlet pipe, and the air outlet pipe is connected to the connecting pipe 25. Control valves 26 are installed on the air outlet pipe, the second mixing pipe 27 and the main pipeline 29, and each control valve 26 is connected to the controller 5 signal.

[0031] Working principle: When in use, the water pump 3 and the motor 11 are started. After the water pump 3 is started, water will be pumped from the outside into the main pipe 29. The water output from the first branch pipe 22 is mixed with ozone in the first ozone water mixing device 19 and then flows into the main pipe 29 through the first mixing pipe 23. The mixed ozone water flows through the main pipe 29 to the second annular hollow plate 9 and flows into the tank body 1 through multiple air outlets 16. At this time, the ozone concentration sensor 10 detects the ozone concentration in the tank body 1 and transmits the detection signal to the controller 5. The controller 5 compares the received ozone concentration value with the preset ozone concentration value. When the detected concentration value is lower than the preset value, the controller 5 controls the control valve 26 on the main pipe 29 and the second mixing pipe 27 to open. The ozone and water are mixed in the second ozone water mixing device 20 and then flow into the connecting pipe 25 through the second mixing pipe 27, and flow into the first annular hollow plate 8 through the second hose 7, and finally flow into the interior of the tank body 1 from the multiple air outlets 16, so that the water in the tank body 1 reaches the predetermined concentration and is sterilized;

[0032] In the above process, the start of the motor 11 causes the first reciprocating screw 12 to rotate, and the second reciprocating screw 13 rotates synchronously with the first reciprocating screw 12 through the transmission of the transmission belt 14, and finally causes the first annular hollow plate 8 and the second annular hollow plate 9 to reciprocate up and down, mixing the ozone and water, which is beneficial to improving the mixing degree of ozone and water and improving the sterilization and disinfection effect;

[0033] It is worth mentioning here that when the controller 5 compares the received ozone concentration value with the preset ozone concentration value, when the detected concentration value is higher than the preset value, the controller 5 controls the control valve 26 on the main pipe 29 and the second mixing pipe 27 to close, opens the control valve 26 on the water outlet pipe, and starts the air pump 18. The start of the air pump 18 will discharge gas through the multiple air outlets 16 on the first annular hollow plate 8. These gases are blown into the mixed water in the form of bubbles. The injection of bubbles will also increase the flow of the water body, further improving the degree of mixing of ozone and water.

[0034] The above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit the same.

Claims

1. A filling water ozone mixing device, comprising a tank body (1), characterized in that: An ozone generator (17) and a motor (11) are installed at the upper end of the tank body (1), the motor (11) is located on the right side of the ozone generator (17), the output shaft end of the motor (11) extends into the tank body (1), a water outlet is provided at the lower end of the tank body (1), a display screen (4) and a controller (5) are installed on the front side of the tank body (1), the controller (5) is located below the display screen (4), and a mixing mechanism and an output mechanism are provided in the tank body (1); The output mechanism comprises a water pump (3) mounted on the left outer wall of the tank body (1), the water outlet end of the water pump (3) extending to the upper end of the tank body (1) and connected to a main pipe (29), the lower end of the main pipe (29) being connected to a water outlet pipe (24) and a connecting pipe (25), the connecting pipe (25) being located on the right side of the water outlet pipe (24); The lower end of the water outlet pipe (24) extends into the tank body (1) and communicates with the interior of the second annular hollow plate (9) through the first hose (6); the lower end of the connecting pipe (25) extends into the tank body (1) and communicates with the interior of the first annular hollow plate (8) through the second hose (7); A first ozone water mixing device (19) is provided on the rear side of the main pipe (29), and the main pipe (29) is connected to the first ozone water mixing device (19) through a first branch pipe (22) and a first mixing pipe (23). A second ozone water mixing device (20) is provided on the right side of the connecting pipe (25), and the connecting pipe (25) is connected to the second ozone water mixing device (20) through a second branch pipe (28) and a second mixing pipe (27). Both the first ozone water mixing device (19) and the second ozone water mixing device (20) are connected to the ozone generator (17) through an air supply pipe (21); An air pump (18) is provided on the front side of the connecting pipe (25), and an air outlet end of the air pump (18) is connected to an air outlet pipe, and the air outlet pipe is connected to the connecting pipe (25). Control valves (26) are installed on the air outlet pipe, the second mixing pipe (27) and the main pipe (29), and each of the control valves (26) is connected to the controller (5) for signal transmission. The mixing mechanism comprises a first reciprocating screw (12) and a second reciprocating screw (13) rotatably connected between the upper and lower inner walls of the tank body (1), the first reciprocating screw (12) being provided with a threaded layer and being threadedly connected to a first annular hollow plate (8), the second reciprocating screw (13) being provided with a threaded layer and being threadedly connected to a second annular hollow plate (9), and a transmission cavity being provided at the bottom of the tank body (1); Two guide rods (15) are fixedly connected between the upper and lower inner walls of the tank body (1). The guide rod (15) on the left side passes through the first annular hollow plate (8) and is slidably connected to the first annular hollow plate (8). The guide rod (15) on the right side passes through the second annular hollow plate (9) and is slidably connected to the second annular hollow plate (9). A plurality of air outlets (16) are provided on the inner sides of the first annular hollow plate (8) and the second annular hollow plate (9). An ozone concentration sensor (10) is installed on the upper end of the second annular hollow plate (9). The ozone concentration sensor (10) is connected to the controller (5) for signal transmission. When the detected concentration value is lower than the preset value, the controller (5) controls the control valves (26) on the main pipe (29) and the second mixing pipe (27) to open, and the ozone and water are mixed in the second ozone water mixing device (20) and flow into the connecting pipe (25) through the second mixing pipe (27), and then flow into the first annular hollow plate (8) through the second hose (7), and finally flow into the interior of the tank body (1) from the multiple air outlets (16), so that the water in the tank body (1) reaches a predetermined concentration and is sterilized; When the detected concentration value is higher than the preset value, the controller (5) controls the control valves (26) on the main pipe (29) and the second mixing pipe (27) to close, opens the control valve (26) on the water outlet pipe, and starts the air pump (18). The start of the air pump (18) will discharge gas through the multiple gas outlets (16) on the first annular hollow plate (8). These gases are blown into the mixed water in the form of bubbles. The injection of bubbles will also increase the flow of the water body and improve the mixing degree of ozone and water.

2. A filling water ozone mixing device according to claim 1, characterized in that: The lower ends of the first reciprocating screw (12) and the second reciprocating screw (13) extend into the transmission cavity and are both equipped with transmission wheels. The two transmission wheels are connected by a transmission belt (14). The output shaft end of the motor (11) is fixedly connected to the upper end of the first reciprocating screw (12).

Citation Information

Patent Citations

  • Centerless machine tool cutting fluid constant temperature device

    CN215102214U

  • Filling water and ozone mixing device

    CN215353196U